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Molecular-level thermodynamic switch controls chemical equilibrium in sequence-specific hydrophobic interaction of 35
1Department of Biochemistry and Molecular Biology, University of Florida, Gainesville, Florida 32610-0245, USA. pwchun@biochem.med.ufl.edu
Abstract:
Applying the Planck-Benzinger methodology, the sequence-specific hydrophobic interactions of 35 dipeptide pairs were examined over a temperature range of 273-333 K, based on data reported by Nemethy and Scheraga in 1962. The hydrophobic interaction in these sequence-specific dipeptide pairs is highly similar in its thermodynamic behavior to that of other biological systems. The results imply that the negative Gibbs free energy change minimum at a well-defined stable temperature,